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聚对苯二甲酸乙二酯纳米塑料对成年雄性瑞士白化小鼠的神经毒性及甜菜碱的改善作用:一项组织病理学、神经化学和分子研究

Polyethylene terephthalate nanoplastics-induced neurotoxicity in adult male Swiss albino mice with amelioration of betaine: a histopathological, neurochemical, and molecular investigation.

作者信息

Kamel Nehal A, Bashir Dina W, El-Leithy Ebtihal M M, Tohamy Adel F, Rashad Maha M, Ali Ghada E, El-Saba Abdel Aleem A

机构信息

Department of Cytology and Histology, Faculty of Veterinary Medicine, Cairo University, Giza, 12211, Egypt.

Department of Toxicology and Forensic Medicine, Faculty of Veterinary Medicine, Cairo University, Giza, 12211, Egypt.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 2025 Feb 12. doi: 10.1007/s00210-025-03867-9.

Abstract

Medicines, food packaging, personal care products, and cosmetics extensively use polyethylene terephthalate nanoplastics (PET-NaPs). However, they also have harmful impacts on several organs. Betaine demonstrates potent antioxidant and anti-inflammatory characteristics. Our goal was to investigate the detrimental impact of PET-NaPs on the mouse brain and evaluate the neuroprotective properties of betaine. We allocated 40 completely mature male Swiss albino mice into four distinct groups: control group, betaine group, PET-NaPs group, and betaine-co-treated group. Following a 30-day duration, euthanasia was performed on the mice, and analyzed tissue samples were obtained from the cerebrum, cerebellum, and hippocampus. PET-NaPs resulted in an elevated level of malondialdehyde and upregulated cyclooxygenase-2 and interleukin-1 beta (IL-1β) expression while significantly reducing the levels of glutathione and downregulating acetylcholinesterase. The PET-NPs also caused significant changes in the histopathology of the brain tissue, and there was a demonstrable rise in the immunostaining of IL-1β and glial fibrillary acidic proteins. Consequently, betaine effectively alleviated the negative consequences of PET-NaPs. Therefore, betaine possesses the capacity to mitigate the neurotoxic consequences induced by PET-NaPs.

摘要

药物、食品包装、个人护理产品和化妆品中广泛使用聚对苯二甲酸乙二醇酯纳米塑料(PET-NaPs)。然而,它们也对多个器官产生有害影响。甜菜碱具有强大的抗氧化和抗炎特性。我们的目标是研究PET-NaPs对小鼠大脑的有害影响,并评估甜菜碱的神经保护特性。我们将40只完全成熟的雄性瑞士白化小鼠分为四个不同的组:对照组、甜菜碱组、PET-NaPs组和甜菜碱联合处理组。30天后,对小鼠实施安乐死,并从大脑、小脑和海马体获取组织样本进行分析。PET-NaPs导致丙二醛水平升高,环氧化酶-2和白细胞介素-1β(IL-1β)表达上调,同时显著降低谷胱甘肽水平并下调乙酰胆碱酯酶。PET-NPs还引起脑组织组织病理学的显著变化,并且IL-1β和胶质纤维酸性蛋白的免疫染色明显增加。因此,甜菜碱有效地减轻了PET-NaPs的负面影响。所以,甜菜碱具有减轻PET-NaPs诱导的神经毒性后果的能力。

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